首页> 外文期刊>Journal of Applied Polymer Science >Preparation and characterization of positively charged composite nanofiltration membranes by coating poly(ether ether ketone) containing quaternary ammonium groups on polysulfone ultrafiltration membranes
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Preparation and characterization of positively charged composite nanofiltration membranes by coating poly(ether ether ketone) containing quaternary ammonium groups on polysulfone ultrafiltration membranes

机译:在聚砜超滤膜上包覆含季铵基的聚醚醚酮,制备带正电复合纳滤膜,并进行表征

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摘要

The novel positively charged poly(ether ether ketone)s (PEEKs) with pendant quaternary ammonium groups were synthesized by copolymerization of 3, 3′-dimethylaminemethylene-4,4′-biphenol (DABP), 3,3′,4, 4′-tetramethylbiphenol, and 4,4′-bisfluorobenzophenone followed by reaction with iodomethane. The resulting copolymers were used to prepare thin film composite (TFC) nanofiltration (NF) membranes via the dip-coating method. The effects of different parameters such as copolymer concentration and curing time on the membrane performance (flux and rejection of inorganic salts) were investigated. The optimum parameters were that 1.5 wt % quaternary ammonium PEEK containing 1.8 quaternary ammonium groups per unit with 0.5 wt % DMSO coated on the polysulfone (PSf) support membrane and cured at 100°C. The results of the performance testing showed that the trend for rejection was R _(Mg)Cl _2 > R _(Ca)Cl _2 > R _(NaCl) > RNa _2SO _4 (R = rejection), which was a typical positively charged membrane. The best performance of these composite nanofiltration membranes was 91.3% rejection for 500 ppm MgCl _2 and 62.5 L/m ~2 h water permeability at 0.4 MPa. The MWCO of the membrane was 800 Da.
机译:通过3,3'-二甲胺亚甲基-4,4'-联苯酚(DABP),3,3',4,4'的共聚反应合成具有季铵基侧基的新型带正电荷的聚醚醚酮(PEEK) -四甲基双酚和4,4'-双氟二苯甲酮,然后与碘甲烷反应。所得共聚物用于通过浸涂法制备薄膜复合材料(TFC)纳滤(NF)膜。研究了共聚物浓度和固化时间等不同参数对膜性能(无机盐的通量和截留率)的影响。最佳参数是每单位含1.8个季铵基团的1.5 wt%季铵盐PEEK,并将0.5 wt%的DMSO涂覆在聚砜(PSf)支撑膜上并在100°C固化。性能测试的结果表明,排斥的趋势为R _(Mg)Cl _2> R _(Ca)Cl _2> R _(NaCl)> RNa _2SO _4(R =排斥),这是典型的带正电的膜。这些复合纳滤膜的最佳性能是在0.4 MPa下对500 ppm MgCl _2的抑制率为91.3%,对水的渗透率为62.5 L / m〜2 h。膜的MWCO为800Da。

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